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Bio-inspired synthesis of hybrid tube-like structures based on CaCO3 and type I-collagen

机译:基于CaCO3和I型胶原的生物启发式混合管状结构的合成

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Although the exciting features exhibited by tube-like structures make them potential candidates for biomedical applications, few studies have dealt with the combination of tubular geometries and the biological responses of biominerals. This study reports on the synthesis of tube-like hybrid structures based on calcium carbonate, a biocompatible mineral, and collagen, the most abundant protein in bone tissue. A biomimetic model aided the synthesis of uniform tubular structures with controlled shape and diameter in the range of 100, 200, and 400 nm. Immersion of the particles in simulated body fluid (SBF) at 37 degrees C for 48 h allowed us to evaluate the bioactivity of the structures. Infrared spectroscopy revealed that biological apatite emerged in the material, confirming its bioactivity. Zeta-potential measurements attested to the high colloidal stability of the nanoparticles in the presence and absence of collagen. Confocal laser microscopy images confirmed that osteoblastic cells cultured in the presence of collagen-modified CaCO3 tube-like nanoparticles proliferated. The 100 nm particles presented special behavior-they adsorbed a larger amount of collagen due to their higher surface area.
机译:尽管管状结构展现出令人兴奋的特征使其成为生物医学应用的潜在候选者,但很少有研究涉及管状几何形状与生物矿物的生物反应的结合。这项研究报道了基于碳酸钙(一种生物相容性矿物)和胶原蛋白(骨骼组织中最丰富的蛋白质)的管状混合结构的合成。仿生模型有助于合成形状和直径受控在100、200和400 nm范围内的均匀管状结构。将颗粒浸入37摄氏度的模拟体液(SBF)中48小时,使我们能够评估结构的生物活性。红外光谱显示该材料中出现了生物磷灰石,证实了其生物活性。 ζ电势测量证明了在存在和不存在胶原的情况下纳米颗粒的高胶体稳定性。共聚焦激光显微镜图像证实在胶原修饰的CaCO3管样纳米颗粒存在下培养的成骨细胞增殖。 100 nm颗粒表现出特殊的行为-由于其较高的表面积,它们吸附了大量的胶原蛋白。

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